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金纳米珠/LC-MS 磷酸化组学分析可快速分析激酶依赖性细胞信号转导网络。

Kinobead/LC-MS Phosphokinome Profiling Enables Rapid Analyses of Kinase-Dependent Cell Signaling Networks.

机构信息

Department of Pharmacology, University of Washington, Seattle, Washington 98195, United States.

Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.

出版信息

J Proteome Res. 2020 Mar 6;19(3):1235-1247. doi: 10.1021/acs.jproteome.9b00742. Epub 2020 Feb 27.

DOI:10.1021/acs.jproteome.9b00742
PMID:32037842
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7537592/
Abstract

Kinase-catalyzed protein phosphorylation is fundamental to eukaryotic signal transduction, regulating most cellular processes. Kinases are frequently dysregulated in cancer, inflammation, and degenerative diseases, and because they can be inhibited with small molecules, they became important drug targets. Accordingly, analytical approaches that determine kinase activation states are critically important to understand kinase-dependent signal transduction and to identify novel drug targets and predictive biomarkers. Multiplexed inhibitor beads (MIBs or kinobeads) efficiently enrich kinases from cell lysates for liquid chromatography-mass spectrometry (LC-MS) analysis. When combined with phosphopeptide enrichment, kinobead/LC-MS can also quantify the phosphorylation state of kinases, which determines their activation state. However, an efficient kinobead/LC-MS kinase phospho-profiling protocol that allows routine analyses of cell lines and tissues has not yet been developed. Here, we present a facile workflow that quantifies the global phosphorylation state of kinases with unprecedented sensitivity. We also found that our kinobead/LC-MS protocol can measure changes in kinase complex composition and show how these changes can indicate kinase activity. We demonstrate the utility of our approach in specifying kinase signaling pathways that control the acute steroidogenic response in Leydig cells; this analysis establishes the first comprehensive framework for the post-translational control of steroid biosynthesis.

摘要

激酶催化的蛋白质磷酸化是真核信号转导的基础,调节着大多数细胞过程。激酶在癌症、炎症和退行性疾病中经常失调,而且由于它们可以被小分子抑制,因此成为重要的药物靶点。因此,确定激酶激活状态的分析方法对于理解激酶依赖性信号转导以及识别新的药物靶点和预测性生物标志物至关重要。多通道抑制剂珠(MIB 或激酶珠)可从细胞裂解物中高效富集激酶,用于液相色谱-质谱(LC-MS)分析。当与磷酸肽富集结合使用时,激酶珠/LC-MS 还可以定量测定激酶的磷酸化状态,从而确定其激活状态。然而,尚未开发出一种允许常规分析细胞系和组织的高效激酶珠/LC-MS 激酶磷酸化谱分析方案。在这里,我们提出了一种简单的工作流程,可前所未有地提高了对激酶整体磷酸化状态的定量能力。我们还发现,我们的激酶珠/LC-MS 方案可以测量激酶复合物组成的变化,并显示这些变化如何指示激酶活性。我们证明了我们的方法在指定控制间质细胞急性甾体生成反应的激酶信号通路方面的实用性;这种分析建立了类固醇生物合成的翻译后调控的首个全面框架。

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